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Optimal input cross-power spectra in shake table testing of asymmetric structures

机译:非对称结构振动台测试中的最佳输入交叉功率谱

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摘要

The study considers earthquake shake table testing of bending-torsion coupled structures under multi-component stationary random earthquake excitations. An experimental procedure to arrive at the optimal excitation cross-power spectral density (psd) functions which maximize/minimize the steady state variance of a chosen response variable is proposed. These optimal functions are shown to be derivable in terms of a set of system frequency response functions which could be measured experimentally without necessitating an idealized mathematical model to be postulated for the structure under study. The relationship between these optimized cross-psd functions to the most favourable/least favourable angle of incidence of seismic waves on the structure is noted. The optimal functions are also shown to be system dependent, mathematically the sharpest, and correspond to neither fully correlated motions nor independent motions. The proposed experimental procedure is demonstrated through shake table studies on two laboratory scale building frame models.
机译:研究考虑了多分量平稳随机地震激励下弯扭耦合结构的振动台试验。提出了一种实验程序,以获得最佳激励交叉功率谱密度(psd)函数,该函数可以最大化/最小化所选响应变量的稳态方差。根据一组系统频率响应函数可以证明这些最佳函数是可导出的,可以通过实验测量这些函数,而不必为研究中的结构假设理想的数学模型。记录了这些优化的交叉psd函数与结构上地震波最有利/最不利的入射角之间的关系。最佳功能还显示为与系统有关,在数学上最尖锐,并且既不对应于完全相关的运动也不对应于独立的运动。通过在两个实验室规模的建筑框架模型上进行振动台研究,证明了拟议的实验程序。

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